ACSSCode
A Web-based Simulator for Sample Size and Power Estimation in Animal Carcinogenicity Studies. A Web-based statistical tool for sample size and power estimation in animal carcinogenicity studies is presented in this paper. It can be used to provide a design with sufficient power for detecting a dose-related trend in the occurrence of a tumor of interest when competing risks are present. The tumors of interest typically are occult tumors for which the time to tumor onset is not directly observable. It is applicable to rodent tumorigenicity assays that have either a single terminal sacrifice or multiple (interval) sacrifices. The design is achieved by varying sample size per group, number of sacrifices, number of sacrificed animals at each interval, if any, and scheduled time points for sacrifice. Monte Carlo simulation is carried out in this tool to simulate experiments of rodent bioassays because no closed-form solution is available. It takes design parameters for sample size and power estimation as inputs through the World Wide Web. The core program is written in C and executed in the background. It communicates with the Web front end via a Component Object Model interface passing an Extensible Markup Language string. The proposed statistical tool is illustrated with an animal study in lung cancer prevention research.
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References in zbMATH (referenced in 6 articles , 1 standard article )
Showing results 1 to 6 of 6.
Sorted by year (- Albano, G.; Giorno, V.; Román-Román, P.; Román-Román, S.; Serrano-Pérez, J. J.; Torres-Ruiz, F.: Inference on an heteroscedastic Gompertz tumor growth model (2020)
- Chrétien, Stéphane; Hero, Alfred O.: On EM algorithms and their proximal generalizations (2008)
- Liu, Xinsheng: Likelihood ratio test for and against nonlinear inequality constraints (2007)
- Ahn, Hongshik; Moon, Hojin; Kim, Sunyoung; Kodell, Ralph L.: A Newton-based approach for attributing tumor lethality in animal carcinogenicity studies. (2002)
- Hojin Moon; J. Jack Lee; Hongshik Ahn; Rumiana Nikolova: A Web-based Simulator for Sample Size and Power Estimation in Animal Carcinogenicity Studies (2002) not zbMATH
- Moon, Hojin; Ahn, Hongshik; Kodell, Ralph L.; Pearce, Bruce A.: A comparison of a mixture likelihood method and the EM algorithm for an estimation problem in animal carcinogenicity studies (1999)